Skip to main content
construction release_alert
Scholars@Duke will be undergoing maintenance April 11-15. Some features may be unavailable during this time.
cancel
Journal cover image

Unusually intense continuing current in lightning produces delayed mesospheric breakdown

Publication ,  Journal Article
Cummer, SA; Füllekrug, M
Published in: Geophysical Research Letters
February 1, 2001

Ultra low frequency magnetic field measurements made 500-2000 km from positive lightning discharges show a signature that is consistent with unusually high amplitude cloud-to-ground continuing lightning current. The magnitude of this nearly constant current moment is as large as 60 kA km and can last at half this amplitude for longer than 150 ms, thereby moving 640 C or more (assuming a 7 km vertical channel length) to the ground after the return stroke. This total charge transfer is more than an order of magnitude greater than most previously reported continuing currents in positive discharges. Three cases analyzed show this strong continuing current flows before, during, and after sprites that initiate more than 40 ms after the return stroke. Accounting for this continuing current, quantitative analysis shows that the total vertical lightning charge moment changes are large enough to produce mesospheric electrical breakdown and long-delayed sprites.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Geophysical Research Letters

DOI

ISSN

0094-8276

Publication Date

February 1, 2001

Volume

28

Issue

3

Start / End Page

495 / 498

Related Subject Headings

  • Meteorology & Atmospheric Sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Cummer, S. A., & Füllekrug, M. (2001). Unusually intense continuing current in lightning produces delayed mesospheric breakdown. Geophysical Research Letters, 28(3), 495–498. https://doi.org/10.1029/2000GL012214
Cummer, S. A., and M. Füllekrug. “Unusually intense continuing current in lightning produces delayed mesospheric breakdown.” Geophysical Research Letters 28, no. 3 (February 1, 2001): 495–98. https://doi.org/10.1029/2000GL012214.
Cummer SA, Füllekrug M. Unusually intense continuing current in lightning produces delayed mesospheric breakdown. Geophysical Research Letters. 2001 Feb 1;28(3):495–8.
Cummer, S. A., and M. Füllekrug. “Unusually intense continuing current in lightning produces delayed mesospheric breakdown.” Geophysical Research Letters, vol. 28, no. 3, Feb. 2001, pp. 495–98. Scopus, doi:10.1029/2000GL012214.
Cummer SA, Füllekrug M. Unusually intense continuing current in lightning produces delayed mesospheric breakdown. Geophysical Research Letters. 2001 Feb 1;28(3):495–498.
Journal cover image

Published In

Geophysical Research Letters

DOI

ISSN

0094-8276

Publication Date

February 1, 2001

Volume

28

Issue

3

Start / End Page

495 / 498

Related Subject Headings

  • Meteorology & Atmospheric Sciences